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Stokes_drift_1d.gif (640 × 240 pixels, file size: 1.04 MB, MIME type: image/gif, looped, 281 frames, 13 s)

Summary

Description
English: Stokes drift in a one-dimensional compressible flow, with the red line the exact solution and the blue line the 2nd-order perturbation-series solution.

The Stokes drift is the solution of the partial differential equation:

with the Eulerian flow velocity as a function of position and time Further is the wavenumber and is the angular frequency.

The animation shows the evolution in time of as a function of position label In the presented case the values of the parameters are: and
The red dots show Lagrangian drifter positions for equidistant labels evolving with time.
The example is analogue to the one described in: G. Falkovich (2011). Fluid Mechanics (A short course for physicists). Cambridge University Press. ISBN 978-1-107-00575-4, pp. 71–72.
Date
Source Own work
Author Kraaiennest
Background
InfoField
The exact solution fo a progressive wave of permanent form is:

where

with the round function denoting rounding to the nearest integer.

The corresponding second-order perturbation series solution shown in the animation is:

 
This diagram was created with MATLAB.

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7 March 2017

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Date/TimeThumbnailDimensionsUserComment
current22:06, 1 May 2017Thumbnail for version as of 22:06, 1 May 2017640 × 240 (1.04 MB)Kraaiennestcorrect vertical axis label
21:53, 1 May 2017Thumbnail for version as of 21:53, 1 May 2017640 × 240 (1.03 MB)Kraaiennestshow also Lagrangian drifter positions; reduce file size
20:02, 7 March 2017Thumbnail for version as of 20:02, 7 March 2017620 × 233 (1.7 MB)Kraaiennestimprove colors
20:01, 7 March 2017Thumbnail for version as of 20:01, 7 March 2017620 × 233 (1.22 MB)Kraaiennestfilesize reduction
19:40, 7 March 2017Thumbnail for version as of 19:40, 7 March 2017620 × 233 (4.53 MB)Kraaiennestsmaller size
19:27, 7 March 2017Thumbnail for version as of 19:27, 7 March 20171,280 × 480 (3.86 MB)KraaiennestUser created page with UploadWizard

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